Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration

We review a selection of methods for performing enhanced sampling in molecular dynamics simulations. We consider methods based on collective variable biasing and on tempering, and offer both historical and contemporary perspectives. In collective-variable biasing, we first discuss methods stemming f...

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Main Authors: Cameron Abrams, Giovanni Bussi
Format: Article
Language:English
Published: MDPI AG 2013-12-01
Series:Entropy
Subjects:
Online Access:http://www.mdpi.com/1099-4300/16/1/163
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spelling doaj-83722de07d664b34873aab014ab845b82020-11-24T23:07:09ZengMDPI AGEntropy1099-43002013-12-0116116319910.3390/e16010163e16010163Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-AccelerationCameron Abrams0Giovanni Bussi1Department of Chemical and Biological Engineering, Drexel University, 3141 Chestnut Street, Philadelphia, PA 19104, USAScuola Internazionale Superiore di Studi Avanzati (SISSA), via Bonomea 265, Trieste 34136, ItalyWe review a selection of methods for performing enhanced sampling in molecular dynamics simulations. We consider methods based on collective variable biasing and on tempering, and offer both historical and contemporary perspectives. In collective-variable biasing, we first discuss methods stemming from thermodynamic integration that use mean force biasing, including the adaptive biasing force algorithm and temperature acceleration. We then turn to methods that use bias potentials, including umbrella sampling and metadynamics. We next consider parallel tempering and replica-exchange methods. We conclude with a brief presentation of some combination methods.http://www.mdpi.com/1099-4300/16/1/163collective variablesfree energyblue-moon samplingadaptive-biasing force algorithmtemperature-accelerationumbrella samplingmetadynamics
collection DOAJ
language English
format Article
sources DOAJ
author Cameron Abrams
Giovanni Bussi
spellingShingle Cameron Abrams
Giovanni Bussi
Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
Entropy
collective variables
free energy
blue-moon sampling
adaptive-biasing force algorithm
temperature-acceleration
umbrella sampling
metadynamics
author_facet Cameron Abrams
Giovanni Bussi
author_sort Cameron Abrams
title Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
title_short Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
title_full Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
title_fullStr Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
title_full_unstemmed Enhanced Sampling in Molecular Dynamics Using Metadynamics, Replica-Exchange, and Temperature-Acceleration
title_sort enhanced sampling in molecular dynamics using metadynamics, replica-exchange, and temperature-acceleration
publisher MDPI AG
series Entropy
issn 1099-4300
publishDate 2013-12-01
description We review a selection of methods for performing enhanced sampling in molecular dynamics simulations. We consider methods based on collective variable biasing and on tempering, and offer both historical and contemporary perspectives. In collective-variable biasing, we first discuss methods stemming from thermodynamic integration that use mean force biasing, including the adaptive biasing force algorithm and temperature acceleration. We then turn to methods that use bias potentials, including umbrella sampling and metadynamics. We next consider parallel tempering and replica-exchange methods. We conclude with a brief presentation of some combination methods.
topic collective variables
free energy
blue-moon sampling
adaptive-biasing force algorithm
temperature-acceleration
umbrella sampling
metadynamics
url http://www.mdpi.com/1099-4300/16/1/163
work_keys_str_mv AT cameronabrams enhancedsamplinginmoleculardynamicsusingmetadynamicsreplicaexchangeandtemperatureacceleration
AT giovannibussi enhancedsamplinginmoleculardynamicsusingmetadynamicsreplicaexchangeandtemperatureacceleration
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